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Homeostasis

A-Level Biology · ⁨Biologi A-Level⁩ · Topic 14 · ⁨Topik 14⁩

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Homeostasis

Lihat satu hari kadar gula darah. Tiga hidangan besar masuk — dan parasnya hampir tidak berubah. Ia bergerak sedikit, kemudian kembali terus. Itu bukan keberuntungan, dan…

English narration · English + 中文 subtitles burned in · ⁨Narasi bahasa Inggris · Subtitle bahasa Inggris + 中文 disematkan langsung⁩

14.1

What homeostasis is · ⁨Apa itu homeostasis⁩

Syllabus · ⁨Silabus⁩
English
  1. explain what is meant by homeostasis and the importance of homeostasis in mammals
  2. explain the principles of homeostasis in terms of internal and external stimuli, receptors, coordination systems (nervous system and endocrine system), effectors (muscles and glands) and negative feedback
  3. state that urea is produced in the liver from the deamination of excess amino acids
  4. describe the structure of the human kidney, limited to: • fibrous capsule • cortex • medulla • renal pelvis • ureter • branches of the renal artery and renal vein
  5. Identify, in diagrams, photomicrographs and electron micrographs, the parts of a nephron and its associated blood vessels and structures, limited to: • glomerulus • Bowman’s capsule • proximal convoluted tubule • loop of Henle • distal convoluted tubule • collecting duct
  6. describe and explain the formation of urine in the nephron, limited to: • the formation of glomerular filtrate by ultrafiltration in the Bowman’s capsule • selective reabsorption in the proximal convoluted tubule
  7. relate the detailed structure of the Bowman’s capsule and proximal convoluted tubule to their functions in the formation of urine
  8. describe the roles of the hypothalamus, posterior pituitary gland, antidiuretic hormone (ADH), aquaporins and collecting ducts in osmoregulation
  9. describe the principles of cell signalling using the example of the control of blood glucose concentration by glucagon, limited to: • binding of hormone to cell surface receptor causing conformational change • activation of G-protein leading to stimulation of adenylyl cyclase • formation of the second messenger, cyclic AMP (cAMP) • activation of protein kinase A by cAMP leading to initiation of an enzyme cascade • amplification of the signal through the enzyme cascade as a result of activation of more and more enzymes by phosphorylation • cellular response in which the final enzyme in the pathway is activated, catalysing the breakdown of glycogen
  10. explain how negative feedback control mechanisms regulate blood glucose concentration, with reference to the effects of insulin on muscle cells and liver cells and the effect of glucagon on liver cells
  11. explain the principles of operation of test strips and biosensors for measuring the concentration of glucose in blood and urine, with reference to glucose oxidase and peroxidase enzymes
Bahasa Indonesia
  1. jelaskan apa yang dimaksud dengan homeostasis dan pentingnya homeostasis pada mamalia
  2. jelaskan prinsip homeostasis dalam hal rangsangan internal dan eksternal, reseptor, sistem koordinasi (sistem saraf dan sistem endokrin), efektor (otot dan kelenjar) dan umpan balik negatif
  3. nyatakan bahwa urea diproduksi di hati dari deaminasi kelebihan asam amino
  4. deskripsikan struktur ginjal manusia, terbatas pada: • kapsul fibrosa • korteks • medula • pelvis renalis • ureter • cabang-cabang arteri renalis dan vena renalis
  5. Identifikasi, dalam diagram, fotomikrograf dan mikroskop elektron, bagian-bagian nefron dan pembuluh darah serta struktur terkaitnya, terbatas pada: • glomerulus • kapsul Bowman • tubulus konvolus proksimal • loop Henle • tubulus konvolus distal • saluran pengumpul
  6. Jelaskan dan jelaskan pembentukan urine di nefron, terbatas pada: • pembentukan filtrat glomerulus melalui ultrafiltrasi di kapsul Bowman • reabsorpsi selektif di tubulus konvolus proksimal
  7. Hubungkan struktur detail kapsul Bowman dan tubulus konvolus proksimal dengan fungsi mereka dalam pembentukan urine
  8. Jelaskan peran hipotalamus, kelenjar hipofisis posterior, hormon antidiuretik (ADH), akuaporin dan saluran pengumpul dalam osmoregulasi
  9. Jelaskan prinsip sinyal seluler menggunakan contoh pengendalian konsentrasi glukosa darah oleh glukagon, terbatas pada: • pengikatan hormon ke reseptor permukaan sel menyebabkan perubahan konformasi • aktivasi protein G yang memicu stimulasi adenilat siklase • pembentukan pesan kedua, cyclic AMP (cAMP) • aktivasi protein kinase A oleh cAMP yang memicu inisiasi kaskade enzim • amplifikasi sinyal melalui kaskade enzim sebagai akibat dari aktivasi semakin banyak enzim oleh fosforilasi • respons seluler di mana enzim terakhir dalam jalur diaktifkan, mengkatalisis pemecahan glikogen
  10. Jelaskan bagaimana mekanisme kontrol umpan balik negatif mengatur konsentrasi glukosa darah, dengan mengacu pada efek insulin pada sel otot dan sel hati serta efek glukagon pada sel hati
  11. Jelaskan prinsip operasi strip uji dan biosensor untuk mengukur konsentrasi glukosa dalam darah dan urine, dengan mengacu pada enzim glukosa oksidase dan peroksidase

Source: Cambridge International syllabus · ⁨Sumber: Silabus Cambridge International⁩

English
Negative feedback: blood glucose

Homeostasis 稳态 means keeping the conditions inside the body steady, even when the outside changes. Keeping things like temperature, water and blood glucose steady lets enzymes and cells work properly all the time.

The principles of homeostasis

Most homeostasis follows the same plan:

  • a change (an internal or external stimulus 刺激) is detected by a receptor 受体.
  • a coordination system carries the message — either the nervous system 神经系统 (using nerve signals) or the endocrine system 内分泌系统 (using hormones 激素).
  • an effector 效应器 (a muscle or a gland 腺体) makes a response that corrects the change.

This works by negative feedback 负反馈: a change away from the normal level triggers a response that pushes it back towards normal.

Bahasa Indonesia
Umpan balik negatif: glukosa darah

Homeostasis berarti menjaga kondisi di dalam tubuh tetap stabil, bahkan ketika lingkungan luar berubah. Menjaga hal-hal seperti suhu, air, dan glukosa darah tetap stabil memungkinkan enzim dan sel berfungsi dengan baik setiap saat.

Alat ukur glukosa darah portabel yang menampilkan hasil pengukuran
Alat ukur glukosa darah: homeostasis menjaga glukosa darah dalam batas sempit

Prinsip-prinsip homeostasis

Sebagian besar homeostasis mengikuti rencana yang sama:

  • perubahan (stimulus internal atau eksternal) dideteksi oleh reseptor.
  • sistem koordinasi membawa pesan — baik sistem saraf (menggunakan sinyal saraf) maupun sistem endokrin (menggunakan hormon).
  • efektor (otot atau kelenjar) membuat respons yang memperbaiki perubahan tersebut.
Seseorang berkeringat selama berolahraga
Berkeringat mendinginkan tubuh — bagian dari homeostasis suhu, dengan kulit sebagai efektor

Ini bekerja melalui umpan balik negatif: perubahan yang menyimpang dari tingkat normal memicu respons yang mendorongnya kembali ke tingkat normal.

Siklus: perubahan dari tingkat normal dideteksi oleh reseptor, diteruskan oleh saraf atau hormon ke efektor, whose response pushes the level back to normal
Umpan balik negatif: reseptor mendeteksi perubahan dan efektor mengoreksinya, mengembalikan ke kondisi normal
Explore · ⁨Jelajahi⁩

Homeostasis

negative feedback to a set point · ⁨umpan balik negatif menuju titik set⁩

Drag the disturbance. A change is corrected back to the set point — the basis of all homeostasis. · ⁨Geser gangguan. Perubahan diperbaiki kembali ke titik set — dasar dari semua homeostasis.⁩

Vocabulary · ⁨Kosa kata⁩ Train · ⁨Latih⁩
English Bahasa Indonesia
homeostasis/ˌhəʊmiːəˈstɑːsiz/ homeostasis
stimulus/ˈstɪmjʊləs/ rangsangan
negative feedback/ˈneɡətɪv ˈfiːdbæk/ umpan balik negatif
glucose/ˈɡluːkəʊs/ glukosa
14.1

The liver and urea · ⁨Hati dan urea⁩

English

The body cannot store extra amino acids. In the liver 肝脏, the process of deamination 脱氨基作用 removes the amino group from excess amino acids 氨基酸, and this is turned into urea 尿素. The urea is carried in the blood to the kidneys to be removed.

Bahasa Indonesia

Tubuh tidak dapat menyimpan asam amino berlebih. Di dalam hati, proses deaminasi removes the amino group from excess amino acids, and this is turned into urea. The urea is carried in the blood to the kidneys to be removed.

Vocabulary · ⁨Kosa kata⁩ Train · ⁨Latih⁩
English Bahasa Indonesia
amino acid/əˈmiːnəʊ ˈæsɪd/ asam amino
urea/juːˈrɪə/ urea
kidney/ˈkɪdni/ ginjal
14.1

The kidney · ⁨Ginjal⁩

English

The kidney 肾脏 cleans the blood and controls its water content. Its parts are:

  • an outer fibrous capsule,
  • an outer region, the cortex 皮质,
  • an inner region, the medulla 髓质,
  • a central space, the renal pelvis 肾盂, which collects urine,
  • the ureter 输尿管, which carries urine to the bladder,
  • branches of the renal artery (bringing blood in) and renal vein (taking blood out).

The nephron

Each kidney holds about a million tiny tubes called nephrons 肾单位. Along a nephron are: the glomerulus 肾小球 (a knot of capillaries), the Bowman's capsule 鲍曼囊 around it, the proximal convoluted tubule 近曲小管, the loop of Henle 亨利环, the distal convoluted tubule 远曲小管, and the collecting duct 集合管.

Making urine

  1. Ultrafiltration 超滤 happens in the Bowman's capsule. The blood in the glomerulus is under high pressure, so water and small molecules (glucose 葡萄糖, ions 离子, urea) are pushed out into the capsule, forming the filtrate 滤液. Blood cells and large proteins are too big to pass, so they stay in the blood.
  2. Selective reabsorption 选择性重吸收 happens in the proximal convoluted tubule. Useful substances are taken back into the blood. All the glucose and much of the water and ions are reabsorbed here. The tubule wall is well suited to this: its cells have microvilli 微绒毛 to give a large surface area, and many mitochondria 线粒体 to power active transport 主动运输.
Bahasa Indonesia

The kidney cleans the blood and controls its water content. Its parts are:

  • an outer fibrous capsule,
  • an outer region, the cortex,
  • an inner region, the medulla,
  • a central space, the renal pelvis, which collects urine,
  • the ureter, which carries urine to the bladder,
  • branches of the renal artery (bringing blood in) and renal vein (taking blood out).
A section through the kidney showing the outer cortex, the inner medulla, the central renal pelvis, the ureter leaving it, and the renal artery and vein at the hilum
Potongan melintang ginjal: darah dibersihkan di korteks dan medula, dan urin terkumpul di pelvis renalis sebelum keluar melalui ureter

Nefron

Each kidney holds about a million tiny tubes called nephrons. Along a nephron are: the glomerulus (a knot of capillaries), the Bowman's capsule around it, the proximal convoluted tubule, the loop of Henle, the distal convoluted tubule, and the collecting duct.

A nephron showing the glomerulus in the Bowman's capsule, the proximal convoluted tubule, the loop of Henle, the distal convoluted tubule and the collecting duct, with ultrafiltration and selective reabsorption marked
Ultrafiltrasi terjadi di kapsul Bowman; reabsorpsi selektif terjadi di tubulus konvolusi proksimal

Pembuatan urin

  1. Ultrafiltrasi terjadi di kapsul Bowman. The blood in the glomerulus is under high pressure, so water and small molecules (glucose, ions, urea) are pushed out into the capsule, forming the filtrate. Blood cells and large proteins are too big to pass, so they stay in the blood.
  2. Reabsorpsi selektif terjadi di tubulus konvolusi proksimal. Useful substances are taken back into the blood. All the glucose and much of the water and ions are reabsorbed here. The tubule wall is well suited to this: its cells have microvilli to give a large surface area, and many mitochondria to power active transport.
Ultrafiltrasi: small molecules pass into the filtrate while cells and proteins stay in the blood
Ultrafiltrasi menjaga sel darah dan protein tetap dalam darah
Explore · ⁨Jelajahi⁩

Explore the nephron · ⁨Jelajahi nefron⁩

Tap each part. Filtration happens at the top; the long tubule then reabsorbs what the body needs, leaving urine. · ⁨Ketuk setiap bagian. Filtrasi terjadi di bagian atas; tubulus panjang kemudian menyerap kembali apa yang dibutuhkan tubuh, menyisakan urine.⁩

Vocabulary · ⁨Kosa kata⁩ Train · ⁨Latih⁩
English Bahasa Indonesia
cortex/ˈkɔːteks/ korteks
medulla/ˈmedʌlə/ medula
renal pelvis/ˈriːnl ˈpelvɪs/ pelas renalis
ureter/ˈjʊəretə/ ureter
nephron/ˈnefrɒn/ nefron
glomerulus/ˈɡlɒmərjʊləs/ glomerulus
Bowman's capsule/ˈbəʊmənz ˈkæpsjuːl/ kapsul Bowman
proximal convoluted tubule/ˈprɒksɪml ˌkɒnvəˈluːtɪd ˈtjuːbjuːl/ tubulus konvolusi proksimal
loop of Henle/luːp ɒv ˈhenl/ loop Henle
distal convoluted tubule/dɪˈstæl ˌkɒnvəˈluːtɪd ˈtjuːbjuːl/ tubulus konvolusi distal
collecting duct/kəˈlektɪŋ dʌkt/ saluran pengumpul
ultrafiltration/ˌʊltrəfɪlˈtreɪʃn/ ultrafiltrasi
ion/ˈaɪɒn/ ion
filtrate/ˈfɪltreɪt/ filtrat
selective reabsorption/sɪˈlektɪv riːbˈsɔːpʃn/ reabsorpsi selektif
microvilli/ˈmaɪkrəʊvɪlaɪ/ mikrovili
mitochondria/ˌmaɪtəˈkɒndrɪə/ mitokondria
active transport/ˈæktɪv ˈtrænspɔːt/ transpor aktif
osmoregulation/ˌɒzmɔːɡjʊˈleɪʃn/ osmoregulasi
14.1

Osmoregulation · ⁨Osmoregulasi⁩

English

Osmoregulation 渗透调节 controls the water content of the blood. It is run by the brain:

  • the hypothalamus 下丘脑 detects the water potential 水势 of the blood.
  • when the blood is too concentrated, the pituitary gland 垂体 releases antidiuretic hormone 抗利尿激素 (ADH).
  • ADH makes the collecting ducts more permeable to water by adding water channels called aquaporins 水通道蛋白.
  • more water is then reabsorbed back into the blood, so less, more concentrated urine is made. This is negative feedback.
Bahasa Indonesia

Osmoregulasi controls the water content of the blood. It is run by the brain:

  • the hypothalamus detects the water potential of the blood.
  • when the blood is too concentrated, the pituitary gland releases antidiuretic hormone (ADH).
  • ADH makes the collecting ducts more permeable to water by adding water channels called aquaporins.
  • more water is then reabsorbed back into the blood, so less, more concentrated urine is made. This is negative feedback.
A negative-feedback loop: when the blood is too concentrated the hypothalamus triggers the pituitary to release ADH, the collecting ducts become more permeable, more water is reabsorbed and the blood water is restored
ADH membuat tubulus pengumpul menyerap lebih banyak air, memulihkan kandungan air darah melalui umpan balik negatif
Explore · ⁨Jelajahi⁩

The ADH pathway · ⁨Jalur ADH⁩

Step through it. When the blood gets too concentrated, ADH makes the kidney save water — classic negative feedback. · ⁨Ikuti langkah-langkahnya. Ketika darah terlalu pekat, ADH membuat ginjal menghemat air — contoh klasik umpan balik negatif.⁩

Vocabulary · ⁨Kosa kata⁩ Train · ⁨Latih⁩
English Bahasa Indonesia
hormone/ˈhɔːməʊn/ hormon
effector/ɪˈfektə/ efektor
gland/ɡlænd/ kelenjar
hypothalamus/ˌhaɪpəʊˈθælæməs/ hipotalamus
water potential/ˈwɔːtə pəˈtenʃl/ potensial air
pituitary gland/pɪˈtjuːɪtəri ɡlænd/ kelenjar hipofisis
antidiuretic hormone/ˌæntɪˌdɪjuːˈretɪk ˈhɔːməʊn/ hormon antidiuretik
aquaporin/ˈækwəpɔːrɪn/ akuaporin
14.1

Controlling blood glucose by cell signalling · ⁨Mengontrol glukosa darah melalui sinyal sel⁩

English

When blood glucose falls, the hormone glucagon 胰高血糖素 is released. It shows how a hormone passes its message into a cell — cell signalling 细胞信号传递:

  1. glucagon binds to a receptor on the liver cell surface, causing a conformational change 构象变化 (a change in the receptor's shape).
  2. this activates a G-protein G蛋白, which switches on the enzyme adenylyl cyclase 腺苷酸环化酶.
  3. adenylyl cyclase makes a second messenger 第二信使 inside the cell, called cyclic AMP 环腺苷酸 (cAMP).
  4. cAMP activates protein kinase A 蛋白激酶A, which starts an enzyme cascade 酶级联反应 — one enzyme 酶 switches on the next, by phosphorylation 磷酸化.
  5. because each enzyme switches on many of the next, the signal is greatly amplified 放大.
  6. the final enzyme breaks down glycogen 糖原 into glucose, which raises the blood glucose level.

Negative feedback and blood glucose

Blood glucose is held steady by two hormones working against each other:

  • when glucose is high, insulin 胰岛素 makes muscle and liver cells take in glucose and store it as glycogen, lowering the level.
  • when glucose is low, glucagon makes liver cells break glycogen back into glucose, raising the level.

Measuring glucose

Test strips 试纸 and biosensors 生物传感器 measure glucose in blood or urine. They use the enzymes glucose oxidase 葡萄糖氧化酶 and peroxidase 过氧化物酶, which react with glucose to give a colour change (or an electric signal in a biosensor) that shows how much glucose is present.

Worked example. A person drinks a large volume of water. Trace the homeostatic response. The blood's water potential rises (becomes less negative). Osmoreceptors in the hypothalamus detect this, so the posterior pituitary releases less ADH. With less ADH, fewer aquaporins are inserted into the collecting duct's membranes, so the duct becomes less permeable to water. Less water is reabsorbed, so a large volume of dilute urine is produced and the blood's water potential falls back towards normal. That return to the set point is what makes it negative feedback - the response reverses the original change. Name the receptor, the hormone, the effector and the correction: an answer that jumps from "drinks water" straight to "more urine" skips every marking point in between.

Bahasa Indonesia

When blood glucose falls, the hormone glucagon is released. It shows how a hormone passes its message into a cell — cell signalling:

  1. glucagon binds to a receptor on the liver cell surface, causing a conformational change (a change in the receptor's shape).
  2. this activates a G-protein G, which switches on the enzyme adenylyl cyclase.
  3. adenylyl cyclase makes a second messenger inside the cell, called cyclic AMP (cAMP).
  4. cAMP activates protein kinase AA, which starts an enzyme cascade — one enzyme switches on the next, by phosphorylation.
  5. because each enzyme switches on many of the next, the signal is greatly amplified.
  6. the final enzyme breaks down glycogen into glucose, which raises the blood glucose level.
Glucagon binds a receptor and activates a G-protein, then adenylyl cyclase, then cAMP, then protein kinase A, then an enzyme cascade that breaks glycogen into glucose; each step activates many, amplifying the signal
Sinyal melewati pembawa pesan kedua (cAMP) dan kaskade enzim — setiap langkah mengaktifkan banyak, sehingga sinyal diperkuat

Umpan balik negatif dan glukosa darah

Blood glucose is held steady by two hormones working against each other:

  • when glucose is high, insulin makes muscle and liver cells take in glucose and store it as glycogen, lowering the level.
  • when glucose is low, glucagon makes liver cells break glycogen back into glucose, raising the level.
Two loops around blood glucose: when high, insulin makes cells store glucose as glycogen so the level falls; when low, glucagon makes the liver break glycogen so the level rises
Insulin dan glukagon bekerja saling berlawanan untuk menjaga kestabilan glukosa darah

Pengukuran glukosa

Strips uji dan biosensor mengukur glukosa dalam darah atau urine. Mereka menggunakan enzim glukosa oksidase dan peroksidase, yang bereaksi dengan glukosa untuk menghasilkan perubahan warna (atau sinyal listrik pada biosensor) yang menunjukkan berapa banyak glukosa yang ada.

Contoh pengerjaan. Seseorang minum air dalam jumlah besar. Jejak respons homeostatisnya. Potensial air darah naik (menjadi kurang negatif). Osmoreseptor di hipotalamus mendeteksi hal ini, sehingga kelenjar hipofisis posterior melepaskan lebih sedikit ADH. Dengan lebih sedikit ADH, lebih sedikit aquaporin disisipkan ke membran tubulus pengumpul, sehingga tubulus menjadi kurang permeabel terhadap air. Lebih sedikit air diserap kembali, sehingga volume urine encer yang besar dihasilkan dan potensial air darah turun kembali mendekati normal. Pengembalian ke titik set ini yang membuatnya sebagai umpan balik negatif - respons membalikkan perubahan awal. Sebutkan reseptor, hormon, efektor dan koreksi: jawaban yang melompat dari "minum air" langsung ke "lebih banyak urine" melewatkan setiap poin penilaian di antaranya.

Explore · ⁨Jelajahi⁩

Controlling blood glucose · ⁨Mengontrol glukosa darah⁩

Push blood glucose away from its set point, then watch negative feedback bring it back: insulin lowers a high level, glucagon raises a low one. · ⁨Mendorong glukosa darah menjauh dari titik setelnya, lalu saksikan umpan balik negatif membawanya kembali: insulin menurunkan kadar yang tinggi, glukagon meningkatkan kadar yang rendah.⁩

Vocabulary · ⁨Kosa kata⁩ Train · ⁨Latih⁩
English Bahasa Indonesia
receptor/rɪˈseptə/ reseptor
nervous system/ˈnɜːvəs ˈsɪstəm/ sistem saraf
endocrine system/ˈendəʊkraɪn ˈsɪstəm/ sistem endokrin
liver/ˈlɪvə/ hati
deamination/ˌdiːmɪˈneɪʃn/ deaminasi
cell signalling/sel ˈsɪɡnəlɪŋ/ penandaan sel
glucagon/ˈɡluːkæɡən/ glukagon
conformational change/kɒnfɔːˈmeɪʃənl tʃeɪndʒ/ perubahan konformasi
G-protein/dʒiː ˈprəʊtiːn/ G-protein
adenylyl cyclase/ˈædənɪlɪl ˈsaɪkleɪz/ adenilat siklase
second messenger/ˈsekənd ˈmesɪndʒə/ pesen kedua
cyclic AMP/ˈsaɪklɪk ˌeɪ em ˈpiː/ AMP siklik
protein kinase A/ˈprəʊtiːn ˈkɪneɪs eɪ/ protein kinase A
enzyme cascade/ˈenzaɪm kəˈskeɪd/ kaskade enzim
enzyme/ˈenzaɪm/ enzim
phosphorylation/ˌfɒsfɔːrɪˈleɪʃn/ fosforilasi
amplification/ˌæmplɪfɪˈkeɪʃn/ amplifikasi
glycogen/ˈɡlaɪkədʒn/ glikogen
insulin/ˈɪnsjuːlɪn/ insulin
test strip/test strɪp/ jalur ujian
biosensor/ˌbaɪəʊˈsensə/ biosensor
glucose oxidase/ˈɡluːkəʊs ˈɒksɪdeɪs/ glukosa oksidase
peroxidase/ˈperəksɪdeɪs/ peroksidase
14.2

Homeostasis in plants: the stomata · ⁨Homeostasis pada tumbuhan: stomata⁩

Syllabus · ⁨Silabus⁩
English
  1. explain that stomata respond to changes in environmental conditions by opening and closing and that regulation of stomatal aperture balances the need for carbon dioxide uptake by diffusion with the need to minimise water loss by transpiration
  2. explain that stomata have daily rhythms of opening and closing
  3. describe the structure and function of guard cells and explain the mechanism by which they open and close stomata
  4. describe the role of abscisic acid in the closure of stomata during times of water stress, including the role of calcium ions as a second messenger
Bahasa Indonesia
  1. Jelaskan bahwa stomata merespons perubahan kondisi lingkungan dengan membuka dan menutup, dan bahwa pengaturan apertur stomata menyeimbangkan kebutuhan akan penyerapan karbon dioksida melalui difusi dengan kebutuhan untuk meminimalkan kehilangan air melalui transpirasi
  2. Jelaskan bahwa stomata memiliki ritme harian pembukaan dan penutupan
  3. Jelaskan struktur dan fungsi sel penjaga dan jelaskan mekanisme bagaimana mereka membuka dan menutup stomata
  4. Jelaskan peran asam absisat dalam penutupan stomata selama masa stres air, termasuk peran ion kalsium sebagai pesan kedua

Source: Cambridge International syllabus · ⁨Sumber: Silabus Cambridge International⁩

English

Stomata 气孔 are pores in a leaf. The plant opens and closes them to balance two needs: letting in carbon dioxide 二氧化碳 for photosynthesis 光合作用, and limiting water loss by transpiration 蒸腾作用. Stomata usually open by day and close at night, following a daily rhythm.

Each stoma is opened and closed by two guard cells 保卫细胞 around it:

  • to open: the guard cells pump in ions, so their water potential falls and water enters by osmosis 渗透. They swell and bend apart, opening the pore.
  • to close: ions leave, water follows out, the guard cells go floppy, and the pore closes.

When the plant is short of water (water stress 水分胁迫), the hormone abscisic acid 脱落酸 is released. It makes the guard cells lose ions and water so the stomata close, saving water. In this signalling, calcium ions 钙离子 act as a second messenger inside the guard cells.

Bahasa Indonesia

Stomata adalah pori-pori pada daun. Tumbuhan membuka dan menutupinya untuk menyeimbangkan dua kebutuhan: memasukkan karbon dioksida untuk fotosintesis, dan membatasi kehilangan air melalui transpirasi. Stomata biasanya terbuka di siang hari dan tertutup di malam hari, mengikuti ritme harian.

Setiap stoma dibuka dan ditutup oleh dua sel penjaga di sekelilingnya:

  • untuk terbuka: sel penjaga memompa ion masuk, sehingga potensial air mereka turun dan air masuk melalui osmosis. Mereka membengkak dan bengkok menjauh, membuka pori.
  • untuk tertutup: ion keluar, air ikut keluar, sel penjaga menjadi lemas, dan pori tertutup.
Dua stomata: satu terbuka dengan sel penjaga yang membengkak dengan air sehingga menyisakan pori, dan satu tertutup dengan sel penjaga yang lemas yang menutup pori
Sel penjaga membuka stoma dengan mengambil air dan menjadi tegar; mereka menutupinya dengan kehilangan air dan menjadi lemas

Ketika tumbuhan kekurangan air (stres air), hormon asam absisat dilepaskan. Hal ini membuat sel penjaga kehilangan ion dan air sehingga stomata tertutup, menghemat air. Dalam pensinyalan ini, ion kalsium bertindak sebagai pembawa pesan kedua di dalam sel penjaga.

Explore · ⁨Jelajahi⁩

How a stoma opens · ⁨Bagaimana stomata terbuka⁩

Step through it. Guard cells pump in ions, draw in water by osmosis, swell turgid and bend apart — opening the pore. · ⁨Ikuti langkah-langkahnya. Sel penjaga memompa ion masuk, menarik air melalui osmosis, membengkak turgid dan bengkok menjauh — membuka pori.⁩

Vocabulary · ⁨Kosa kata⁩ Train · ⁨Latih⁩
English Bahasa Indonesia
stomata/ˈstəʊmətə/ stomata
carbon dioxide/ˈkɑːbən daɪˈɒksaɪd/ karbon dioksida
photosynthesis/ˌfəʊtəʊˈsɪnθəsɪs/ fotosintesis
transpiration/trænspəˈreɪʃn/ transpirasi
guard cell/ɡɑːd sel/ sel penjaga
osmosis/ɒzˈməʊsɪs/ osmosis
abscisic acid/əbˈsɪzɪk ˈæsɪd/ asam absisat
water stress/ˈwɔːtə stres/ stres air
calcium ion/ˈkælsɪəm ˈaɪɒn/ ion kalsium
14.2

Exam tips · ⁨Tips ujian⁩

English
  • Frame every answer as negative feedback: receptor → coordinator → effector → correction; name each part.
  • Blood glucose: insulin lowers it (uptake, glycogenesis), glucagon raises it (glycogenolysis) — explain through cell signalling.
  • Kidney: know ultrafiltration (Bowman's capsule), selective reabsorption (proximal tubule) and the role of ADH in osmoregulation.
  • Stomata open when guard cells become turgid (K+ enters, water follows).
Bahasa Indonesia
  • Bingkai setiap jawaban sebagai umpan balik negatif: reseptor → koordinator → efektor → koreksi; sebutkan masing-masing bagian.
  • Glukosa darah: insulin menurunkannya (penyerapan, glikogenesis), glukagon meningkatkannya (glikogenolisis) - jelaskan melalui pensinyalan sel.
  • Ginjal: ketahui ultrafiltrasi (kapsul Bowman), reabsorpsi selektif (tubulus proksimal) dan peran ADH dalam osmoregulasi.
  • Stomata terbuka ketika sel penjaga menjadi tegar (K+ masuk, air ikut).

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