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高光诱导C4植物叶肉和维管束鞘叶绿体中CF1 α亚基的两种同工型积累。

High light induced accumulation of two isoforms of the CF1 alpha-subunit in mesophyll and bundle sheath chloroplasts of C4 plants.

作者信息

Romanowska Elzbieta, Powikrowska Marta, Zienkiewicz Maksymilian, Drozak Anna, Pokorska Berenika

机构信息

Department of Plant Physiology, Warsaw University, Warszawa, Poland.

出版信息

Acta Biochim Pol. 2008;55(1):175-82. Epub 2008 Mar 7.

Abstract

The effect of light irradiance on the amount of ATP synthase alpha-subunit in mesophyll (M) and bundle sheath (BS) chloroplasts of C(4) species such as maize (Zea mays L., type NADP-ME), millet (Panicum miliaceum, type NAD-ME) and guinea grass (Panicum maximum, type PEP-CK) was investigated in plants grown under high, moderate and low light intensities equal to 800, 350 and 50 micromol photons m(-2) s(-1), respectively. The results demonstrate that alpha-subunit of ATP synthase in both M and BS chloroplasts is altered by light intensity, but differently in the investigated species. Moreover, we identified two isoforms of the CF(1) alpha-subunit, called alpha and alpha. The CF(1) alpha-subunit was the major isoform and was present in all light conditions, whereas alpha was the minor isoform in low light. A strong increase in the level of the alpha-subunit in maize mesophyll and bundle sheath thylakoids was observed after 50 h of high light treatment. The alpha and alpha-subunits from investigated C(4) species displayed apparent molecular masses of 64 and 67 kDa, respectively, on SDS/PAGE. The presence of the alpha-subunit of ATPase was confirmed in isolated CF(1) complex, where it was recognized by antisera to the alpha-subunit. The N-terminal sequence of alpha-subunit is nearly identical to that of alpha. Our results indicate that both isoforms coexist in M and BS chloroplasts during plant growth at all irradiances. We suggest the existence in M and BS chloroplasts of C(4) plants of a mechanism(s) regulating the ATPase composition in response to light irradiance. Accumulation of the alpha isoform may have a protective role under high light stress against over protonation of the thylakoid lumen and photooxidative damage of PSII.

摘要

研究了光辐照度对C4植物如玉米(Zea mays L.,NADP-ME型)、粟(Panicum miliaceum,NAD-ME型)和大黍(Panicum maximum,PEP-CK型)叶肉(M)和维管束鞘(BS)叶绿体中ATP合酶α亚基含量的影响,这些植物分别生长在高光强、中等光强和低光强条件下,光强分别为800、350和50 μmol光子·m-2·s-1。结果表明,M和BS叶绿体中ATP合酶的α亚基均受光强影响,但在所研究的物种中变化方式不同。此外,我们鉴定出CF1α亚基的两种同工型,分别称为α和α'。CF1α亚基是主要同工型,在所有光照条件下均存在,而α'在低光下是次要同工型。高光处理50小时后,观察到玉米叶肉和维管束鞘类囊体中α亚基水平显著增加。在所研究的C4物种中,α和α'亚基在SDS/PAGE上的表观分子量分别为64 kDa和67 kDa。在分离的CF1复合物中证实了ATP酶α亚基的存在,该复合物可被α亚基抗血清识别。α亚基的N端序列与α'几乎相同。我们的结果表明,在植物生长的所有辐照度下,两种同工型在M和BS叶绿体中均共存。我们认为,C4植物的M和BS叶绿体中存在一种机制,可根据光辐照度调节ATP酶的组成。α同工型的积累可能在高光胁迫下对类囊体腔的过度质子化和PSII的光氧化损伤起到保护作用。

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